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在墨西哥大蝙蝠 Corynorhinus mexicanus 中观察到的精子钙流和膜电位超极化。

Sperm calcium flux and membrane potential hyperpolarization observed in the Mexican big-eared bat Corynorhinus mexicanus.

机构信息

Doctorado en Biología Experimental, Universidad Autónoma Metropolitana, Iztapalapa, 09310 Ciudad de México, México.

Laboratorio de Biología y Ecología de Mamíferos, Universidad Autónoma Metropolitana, Iztapalapa, 09310 Ciudad de México, México.

出版信息

J Exp Biol. 2023 Jan 15;226(2). doi: 10.1242/jeb.244878. Epub 2023 Jan 30.

Abstract

Mammalian sperm capacitation involves biochemical and physiological changes, such as an increase in intracellular calcium ion concentration ([Ca2+]i), hyperpolarization of the plasma membrane potential and sperm hyperactivation, among others. These changes provide sperm with the ability to fertilize. In the bat Corynorhinus mexicanus, there is an asynchrony between spermatogenesis and sperm storage in the male with the receptivity of the female. For instance, in C. mexicanus, spermatogenesis occurs before the reproductive season. During the reproductive period, sperm are stored in the epididymis for a few months and the testis undergoes a regression, indicating low or almost null sperm production. Therefore, it is unclear whether the elements necessary for sperm fertilization success undergo maturation or preparation during epididymis storage. Here, we characterized pH-sensitive motility hyperactivation and Ca2+ influx in sperm, regulated by alkalinization and progesterone. In addition, by electrophysiological recordings, we registered currents that were stimulated by alkalinization and inhibited by RU1968 (a CatSper-specific inhibitor), strongly suggesting that these currents were evoked via CatSper, a sperm Ca2+-specific channel indispensable for mammalian fertilization. We also found hyperpolarization of the membrane potential, such as in other mammalian species, which increased according to the month of capture, reaching the biggest hyperpolarization during the mating season. In conclusion, our results suggest that C. mexicanus sperm have functional CatSper and undergo a capacitation-like process such as in other mammals, particularly Ca2+ influx and membrane potential hyperpolarization.

摘要

哺乳动物精子获能涉及生化和生理变化,例如细胞内钙离子浓度([Ca2+]i)增加、质膜电位超极化和精子超激活等。这些变化赋予精子受精的能力。在蝙蝠 Corynorhinus mexicanus 中,精子发生和雄性的精子储存与雌性的接受能力之间存在异步性。例如,在 C. mexicanus 中,精子发生发生在生殖季节之前。在生殖期间,精子在附睾中储存数月,睾丸发生退化,表明精子产生量低或几乎为零。因此,尚不清楚用于精子受精成功的元素是否在附睾储存期间经历成熟或准备。在这里,我们描述了 pH 敏感的运动超激活和 Ca2+ 内流在精子中的特征,受碱化和孕酮调节。此外,通过电生理记录,我们记录了由碱化刺激和 RU1968(CatSper 特异性抑制剂)抑制的电流,强烈表明这些电流是通过 CatSper 激发的,CatSper 是哺乳动物受精所必需的精子 Ca2+ 特异性通道。我们还发现了膜电位的超极化,如在其他哺乳动物中一样,根据捕获月份而增加,在交配季节达到最大超极化。总之,我们的结果表明 C. mexicanus 精子具有功能性 CatSper,并经历类似于其他哺乳动物的获能过程,特别是 Ca2+ 内流和膜电位超极化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9290/10086540/651f6b11af39/jexbio-226-244878-g1.jpg

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